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Electrochemical Effectiveness Factors for Butler-Volmer Reaction Kinetics in Active Electrode Layers of Solid Oxide Fuel Cells
Jin Hyun Nam
J. Electrochem. Sci. Technol. 2017;8(4):344-355.   Published online December 31, 2017
DOI: https://doi.org/10.5229/JECST.2017.8.4.344

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Electrochemical Effectiveness Factors for Butler-Volmer Reaction Kinetics in Active Electrode Layers of Solid Oxide Fuel Cells
Journal of Electrochemical Science and Technology. 2017;8(4):344-355   Crossref logo
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Reaction Kinetics and Microstructure of the Solid Oxide Fuel Cells Air Electrode La0.6Ca0.4MnO3 /  YSZ
Journal of The Electrochemical Society. 1991;138(7):1867-1873   Crossref logo
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ChemInform Abstract: Reaction Kinetics and Microstructure of the Solid Oxide Fuel Cells Air Electrode La0.6Ca0.4MnO3/YSZ.
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An Electrochemical Effectiveness Model and Its Implication for Performance Loss Due to Electrode Microstructural Degradation in Solid Oxide Fuel Cells
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Electrode materials and reaction mechanisms in solid oxide fuel cells: a brief review
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ChemInform Abstract: Electrode Materials and Reaction Mechanisms in Solid Oxide Fuel Cells: A Brief Review. Part 2. Electrochemical Behavior vs. Materials Science Aspects
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The Butler-Volmer Equation for Polymer Electrolyte Membrane Fuel Cell (PEMFC) Electrode Kinetics: A Critical Discussion
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FUEL CELLS – SOLID OXIDE FUEL CELLS | Membranes
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Electrode layer on a solid oxide electrolyte
Fuel Cells Bulletin. 1998;1(2):14   Crossref logo
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